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Crystal structure of a key enzyme in the agarolytic pathway, alpha-neoagarobiose hydrolase from Saccharophagus degradans 2-40

Authors
Ha, Sung ChulLee, SaeyoungLee, JonasKim, Hee TaekKo, Hyeok-JinKim, Kyoung HeonChoi, In-Geol
Issue Date
26-8월-2011
Publisher
ACADEMIC PRESS INC ELSEVIER SCIENCE
Keywords
alpha-Neoagarobiose hydrolase; Five-bladed beta-propeller fold; Agarolytic pathway; Glycoside hydrolase family 117
Citation
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, v.412, no.2, pp.238 - 244
Indexed
SCIE
SCOPUS
Journal Title
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Volume
412
Number
2
Start Page
238
End Page
244
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/111762
DOI
10.1016/j.bbrc.2011.07.073
ISSN
0006-291X
Abstract
In agarolytic microorganisms, alpha-neoagarobiose hydrolase (NABH) is an essential enzyme to metabolize agar because it converts alpha-neoagarobiose (0-3,6-anhydro-alpha-L-galactopyranosyl-(1,3)-D-galactose) into fermentable monosaccharides (D-galactose and 3,6-anhydro-L-galactose) in the agarolytic pathway. NABH can be divided into two biological classes by its cellular location. Here, we describe a structure and function of cytosolic NABH from Saccharophagus degradans 2-40 in a native protein and D-galactose complex determined at 2.0 and 1.55 A. respectively. The overall fold is organized in an N-terminal helical extension and a C-terminal five-bladed beta-propeller catalytic domain. The structure of the enzyme-ligand (D-galactose) complex predicts a +1 subsite in the substrate binding pocket. The structural features may provide insights for the evolution and classification of NABH in agarolytic pathways. (C) 2011 Elsevier Inc. All rights reserved.
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